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驱虫药在扩展莫尼茨绦虫中的生物转化及药物代谢酶的活性

Biotransformation of anthelmintics and the activity of drug-metabolizing enzymes in the tapeworm Moniezia expansa.

作者信息

Prchal Lukáš, Bártíková Hana, Bečanová Aneta, Jirásko Robert, Vokřál Ivan, Stuchlíková Lucie, Skálová Lenka, Kubíček Vladimír, Lamka Jiří, Trejtnar František, Szotáková Barbora

机构信息

Faculty of Pharmacy,Charles University,Heyrovského 1203,CZ-50005 Hradec Králové,Czech Republic.

Faculty of Chemical Technology,University of Pardubice,Studentská 573,CZ-53210 Pardubice,Czech Republic.

出版信息

Parasitology. 2015 Apr;142(5):648-59. doi: 10.1017/S0031182014001711. Epub 2014 Nov 6.

Abstract

The sheep tapeworm Moniezia expansa is very common parasite, which affects ruminants such as sheep, goats as well as other species. The benzimidazole anthelmintics albendazole (ABZ), flubendazole (FLU) and mebendazole (MBZ) are often used to treat the infection. The drug-metabolizing enzymes of helminths may alter the potency of anthelmintic treatment. The aim of our study was to assess the activity of the main drug-metabolizing enzymes and evaluate the metabolism of selected anthelmintics (ABZ, MBZ and FLU) in M. expansa. Activities of biotransformation enzymes were determined in subcellular fractions. Metabolites of the anthelmintics were detected and identified using high performance liquid chromatography/ultra-violet/VIS/fluorescence or ultra-high performance liquid chromatography/mass spectrometry. Reduction of MBZ, FLU and oxidation of ABZ were proved as well as activities of various metabolizing enzymes. Despite the fact that the conjugation enzymes glutathione S-transferase, UDP-glucuronosyl transferase and UDP-glucosyl transferase were active in vitro, no conjugated metabolites of anthelmintics were identified either ex vivo or in vitro. The obtained results indicate that sheep tapeworm is able to deactivate the administered anthelmintics, and thus protects itself against their action.

摘要

绵羊绦虫扩展莫尼茨绦虫是一种非常常见的寄生虫,可感染绵羊、山羊等反刍动物以及其他物种。苯并咪唑类驱虫药阿苯达唑(ABZ)、氟苯达唑(FLU)和甲苯达唑(MBZ)常被用于治疗该感染。蠕虫的药物代谢酶可能会改变驱虫治疗的效力。我们研究的目的是评估主要药物代谢酶的活性,并评价扩展莫尼茨绦虫中所选驱虫药(ABZ、MBZ和FLU)的代谢情况。在亚细胞组分中测定生物转化酶的活性。使用高效液相色谱/紫外/可见/荧光或超高效液相色谱/质谱检测并鉴定驱虫药的代谢产物。证实了MBZ和FLU的还原以及ABZ的氧化,还有各种代谢酶的活性。尽管谷胱甘肽S-转移酶、UDP-葡萄糖醛酸基转移酶和UDP-葡萄糖基转移酶等结合酶在体外具有活性,但在体内或体外均未鉴定出驱虫药的结合代谢产物。所得结果表明,绵羊绦虫能够使施用的驱虫药失活,从而保护自身免受其作用。

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